Scientia Agricultura Sinica ›› 2013, Vol. 46 ›› Issue (9): 1781-1789.doi: 10.3864/j.issn.0578-1752.2013.09.005

• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY·AGRICULTURE INFORMATION TECHNOLOGY • Previous Articles     Next Articles

Multi-Index Irrigation Information Management System Based on WebGIS

 CHEN  Zhi-Fang, WANG  Jing-Lei, LIU  Zu-Gui, SONG  Ni   

  1. Farmland Irrigation Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory for Crop Water Requirement and Regulation, Ministry of Agriculture, Xinxiang 453002, Henan
  • Received:2012-11-01 Online:2013-05-01 Published:2013-01-18

Abstract: 【Objective】The objective of this study is to improve the precision of irrigation decision and high efficient utilization of water resources.【Method】Based on precise irrigation, a system for multi-index irrigation management was developed by using the principle and method of system engineering and software engineering, which mixed with various technologies, such as the computer, database, networks and geographic information system, etc. 【Result】Taking the crop water requirement as the foundation, the decision models of single factor and multiple factors were constructed through considering the influence of the soil, crop, field monitoring, irrigation and drainage information, meteorological factors and so on. The information data such as irrigation area, real-time meteorological factors, crop water requirements, effective rainfall, the decision results, and soil moisture distribution were published by using the function of SuperMap IS.net. The operation personnel could get the total situation of the irrigation district and the decision results through the map Also, the system could analyze and integrate the discrete data of irrigation district. 【Conclusion】 The system was applied in the irrigation district of the Renmin Shengli Canal and Guangli. The results showed that application of the system improved the irrigation management level and decision accuracy, and also realized the intelligence and information of irrigation management and decision.

Key words: WebGIS , irrigation management , multi-index decision-making , spatial analysis , web publishing

[1]刘秀珍, 郑德聪, 马骏, 郭丽娜. 精确灌溉与施肥自动化管理系统的研制与实现. 水土保持学报, 2006, 20(5): 197-200.    

Liu X Z, Zheng D C, Ma J, Guo L N. Accurate to irrigate and apply fertilizer automatic reseach of administrative system and realize. Journal of Soil and Water Conservation, 2006, 20(5): 197-200. (in Chinese)     

[2]马骏. 精确灌溉与施肥自动化控制系统的研究[D]. 晋中: 山西农业大学, 2005.   

Ma J. The study of accurate irrigation and fertilization automatic control system[D]. Jinzhong: Shanxi Agricultural University, 2005. (in Chinese)

[3]郑宇鸣, 孟波, 刘振环, 张锡顺, 林郁, 杨红钧. “3S”集成技术在精细农业中的应用. 农机化研究, 2011(8): 219-221.

Zheng Y M, Meng B, Liu Z H, Zhang X S, Lin Y, Yang H J. The application of “3S” technology to the meticulous agriculture. Journal of Agricultural Mechanization Research, 2011(8): 219-221. (in Chinese)

[4]刘扬. 遗传算法和GIS技术在精细灌溉决策支持系统中的应用研究[D]. 保定: 河北农业大学, 2007.

Liu Y. The application and research of genetic algorithm(GA) and GIS in the precision irrigation decision support system[D]. Baoding: Agricultural University of Hebei, 2007. (in Chinese)

[5]蔡甲冰, 刘钰, 许迪. 基于作物冠气温差的精量灌溉决策模型及其应用//中国水利学会第四届青年科技论坛论文集. 北京: 中国水利水电出版社, 2008: 280-286.

Cai J B, Liu Y, Xu D. Precise irrigation decision model and its application based on difference temperature between canopy and air//The Proceedings of the Fourth Youth Science and Technology BBS of Chinese Hydraulic Engineering Society. Beijing: China Water Power Press , 2008: 280-286. (in Chinese)

[6]曹静. 精确农作管理模型与决策支持系统的研究[D]. 南京: 南京农业大学, 2008.

Cao J. Study on precision crop management model and decision support system[D]. Nanjing: Nanjing Agricultural University, 2008. (in Chinese)

[7]曹元军, 王新忠. 基于作物冠层温度变化的无线传感器网络灌溉系统的研究. 农机化研究, 2012(9): 126-129.

Cao Y J, Wang X Z. Study on precision irrigation system based on wireless sensor networks for crop canopy surface temperature variation. Journal of Agricultural Mechanization Research, 2012(9): 126-129. (in Chinese)

[8]蔡甲冰, 刘钰, 雷廷武, 许迪. 精量灌溉决策定量指标研究现状与进展. 水科学进展, 2004, 15(4): 531-537.

Cai J B, Liu Y, Lei T W, Xu D. Review of indices for precision irrigation decision-making. Advances in Water Science, 2004, 15(4): 531-537. (in Chinese)

[9]陈蓉蓉, 周治国, 曹卫星, 朱艳, 戴廷波. 农田精确施肥决策支持系统的设计和实现. 中国农业科学, 2004, 37(4): 516-521.

Chen R R, Zhou Z G, Cao W X, Zhu Y, Dai T B. Designing and implementation of a decision supporting system for precision fertilization(DSSPF). Scientia Agricultura Sinica, 2004, 37(4): 516-521. (in Chinese)

[10]Zhu Y, Cao W X, Dai T B, Sun C F. A dynamic knowledge model for nitrogen fertilization in wheat management. Agricultural Sciences in China, 2003, 2(8): 850-858.

[11]Zhu Y, Cao W X, Wang Q M, Tian Y C, Pan J. A knowledge model- and growth model-based decision support system for wheat management. Agricultural Sciences in China, 2003, 2(11): 1212-1220.

[12]朱艳, 曹卫星, 王其猛, 田永超, 潘洁. 基于知识模型和生长模型的小麦管理决策支持系统. 中国农业科学, 2004, 37(6): 814-820.

Zhu Y, Cao W X, Wang Q M, Tian Y C, Pan J. A knowledge model- and growth model-based decision support system for wheat management. Scientia Agricultura Sinica, 2004, 37(6): 814-820. (in Chinese)

[13]陈艳艳, 许艺珠, 董剑利. 基于 WebGIS 的物业管理信息系统的设计与实现. 计算机工程与设计, 2009, 30(15): 3676-3679.

Chen Y Y, Xu Y Z, Dong J L. Design and implementation of property management information system based on WebGIS. Computer Engineering and Design, 2009, 30(15): 3676-3679. (in Chinese)

[14]刘瑞, 胡昇, 潘瑜春. 基于WebGIS和Portal的林业资源管理决策系统. 计算机技术与发展, 2010, 20(4): 203-206, 210.

Liu R, Hu S, Pan Y C. A system for forestry resources management and decision-support based on WebGIS and portal. Computer Technology and Development, 2010, 20(4): 203-206, 210. (in Chinese)

[15]牟秋蔷. 基于ArcGIS Engine的森林资源管理系统空间插值分析功能的实现. 吉林林业科技, 2011, 40(1): 26-28, 59.

Mu Q Q. Achievement of spatial interpolation analysis in forest resourcesmanagement system based on ArcGIS Engine. Journal of Jilin Forestry Science and Technology, 2011, 40(1): 26-28, 59. (in Chinese)

[16]王振颖. 基于GIS辽宁省灌区管理信息系统的研究[D]. 北京: 北京林业大学, 2006.

Wang Z Y. Development of GIS based irrigation management information system in Liaoning[D]. Beijing: Beijing Forestry University, 2006. (in Chinese)

[17]王卫星, 宋淑然, 许利霞, 袁国富, 崔晓. 基于冠层温度的夏玉米水分胁迫理论模型的初步研究. 农业工程学报, 2006, 22(5): 194-196.

Wang W X, Song S R, Xu L X, Yuan G F, Cui X. Theoretical model of the crop water stress index for monitoring summer maize water stress based on canopy surface temperature. Transactions of the CSAE, 2006, 22(5): 194-196. (in Chinese)

[18]袁国富, 罗毅, 孙晓敏, 唐登银. 作物冠层表面温度诊断冬小麦水分胁迫的试验研究. 农业工程学报, 2002, 18(6): 13-17.

Yuan G F, Luo Y, Sun X M, Tang D Y. Winter wheat water stress detection based on canopy surface temperature. Transactions of the CSAE, 2002, 18(6): 13-17. (in Chinese)

[19]刘云, 宇振荣, 孙丹峰. 冬小麦冠气温差及其相关影响因素关系研究. 灌溉排水学报, 2004, 16(l): 30-35.

Liu Y, Yu Z R, Sun D F. Difference of canopy-air temperature and its affecting factors. Journal of Irrigation and Drainage, 2004, 16(l): 30-35. (in Chinese)

[20]AI-Faraja A, Meyer G E, Horst G L. A crop water stress index for tall fescue (Festuca arundinacea Schreb.) irrigation decision-making-a fuzzy logic method. Journal of Computers and Electronics in Agriculture, 2001b, 32: 69-84.

[21]AI-Faraj A, Meyer G E, Horst G L. A crop water stress index for tall fescue (Festuca arundinacea Schreb.) irrigation decision-making-a traditional method. Journal of Computers and Electronics in Agriculture, 2001, 31: 107-124.

[22]Erdem Y, Arin L, Erdem T, Polat S, Deveci M, Okursoy H, Gultas H  T. Crop water stress index for assessing irrigation scheduling of drip irrigated broccoli (Brassica oleracea L. var. italica). Journal of Agricultural Water Management, 2012, 98: 148-156.

[23]张喜英, 裴冬, 胡春胜. 太行山山前平原冬小麦和夏玉米灌溉指标研究. 农业工程学报, 2002, 18(6): 36-41.

Zhang X Y, Pei D, Hu C S. Index system for irrigation scheduling of winter wheat and maize in the piedmont of Mountain Taihang. Transactions of the CSAE, 2002, 18(6): 36-41. (in Chinese)

[24]孟兆江, 段爱旺, 刘祖贵, 张寄阳, 卞新民. 温室茄子茎直径微变化与作物水分状况的关系. 生态学报, 2006, 26(8): 2516-2522.

Meng Z J, Duan A W, Liu Z G, Zhang J Y, Bian X M. The relationship between the change of stem diameter and plant water content of eggplants: an experimental study. Acta Ecologica Sinica, 2006, 26(8): 2516-2522. (in Chinese)

[25]蔡甲冰. 参照腾发量实时预报与冬小麦多指标综合精量灌溉决策研究[D]. 北京: 中国农业大学, 2006.

Cai J B. Real-time forecasting of reference evaportranspiration and precision irrigation decision with multi-indicators of winter wheat[D]. Beijing: China Agricultural University, 2006. (in Chinese)

[26]茆智, 李远华, 李会昌. 实时灌溉预报. 中国工程科学, 2002, 4(5): 24-33.

Mao Z, Li Y H, Li H C. Real-time forecast of irrigation. Engineering Science, 2002, 4(5): 24-33. (in Chinese)
[1] JIANG JingJing,QU Feng,SU ChunJie,YANG JianFeng,YU Jian,HU XiaoHui. Effects of Different Water and Fertilizer Coupling on Yield and Quality of Cucumber and Partial Factor Productivity of Fertilizer [J]. Scientia Agricultura Sinica, 2019, 52(1): 86-97.
[2] DIAO Hai-ting, NIE Yi-min. Platform Construction of Vegetable Safety Warning and Traceability Based on Modern Information Technology [J]. Scientia Agricultura Sinica, 2015, 48(3): 460-468.
[3] . Prescription Map Generation System of Precision Agriculture Based on Knowledge Model and WebGIS [J]. Scientia Agricultura Sinica, 2007, 40(6): 1190-1197 .
[4] ,,,. Spatial Variability of Organochlorine Pesticides (DDTs and HCHs) in Surface Soils of Farmland in Beijing, China [J]. Scientia Agricultura Sinica, 2006, 39(7): 1403-1410 .
[5] ,. The spatial analysis of landuse ecological services value in loess plateau in northern Shaanxi pronvice [J]. Scientia Agricultura Sinica, 2006, 39(12): 2538-2544 .
[6] ,. Study on WebGIS-Based Farming Environment Quality Assessment System [J]. Scientia Agricultura Sinica, 2005, 38(03): 551-557 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!